[1] 霍兆义,尹洪超,赵亮,等. 国内换热网络综合方法研究进展与展望[J]. 化工进展,2012,31(4):726-731. [2] KANG L,LIU Y,LIANG X. Multi-objective optimization of heat exchanger networks based on analysis of minimum temperature difference and accumulated CO2 emissions[J]. Applied Thermal Engineering,2015,87(5):736-748. [3] RAVAGNANI M A S S,MANO T B,CARVALHO E P,et al. Multi-objective heat exchanger networks synthesis considering economic and environmental optimization[J]. Computer Aided Chemical Engineering,2014,33:1579-1584. [4] YI D K,HAN Z Z,WANG K F,et al. Strategy for synthesis of flexible heat exchanger networks embedded with system reliability analysis[J]. Chinese Journal of Chemical Engineering,2013,21(7):742-753. [5] ESCOBAR M,TRIERWEILER J O,GROSSMANN I E. Simultaneous synthesis of heat exchanger networks with operability considerations:flexibility and controllability[J]. Computers & Chemical Engineering,2013,55:158-180. [6] WEN Y,SHONNARD D R. Environmental and economic assessments of heat exchanger networks for optimum minimum approach temperature[J]. Computers & Chemical Engineering,2003,27(11):1577-1590. [7] CHEN C L,HUNG P S. Multicriteria synthesis of flexible heat-exchanger networks with uncertain source-stream temperatures [J]. Chemical Engineering and Processing:Process Intensification,2005,44(1):89-100. [8] BJÖRK K M,WESTERLUND T. Proceedings of the IEASTED international conference:Modelling,identification,and control[C]// Acta Press,Calgary,AB,Canada,2002. [9] SREEPATHI B K,RANGAIAH G P. Review of heat exchanger network retrofitting methodologies and their applications[J]. Industrial & Engineering Chemistry Research,2014,53(28):11205-11220. [10] COELLO C A. Evolutionary multi-objective optimization:a historical view of the field[J]. Computational Intelligence Magazine,IEEE,2006,1(1):28-36. [11] NA J,JUNG J,PARK C,et al. Simultaneous synthesis of a heat exchanger network with multiple utilities using utility substages[J]. Computers & Chemical Engineering,2015,79:70-79. [12] ZHOU A,QU B Y,LI H,et al. Multiobjective evolutionary algorithms:a survey of the state of the art[J]. Swarm and Evolutionary Computation,2011,1(1):32-49. [13] LÓPEZ-MALDONADO L A,PONCE-ORTEGA J M,SEGOVIA-HERNÁNDEZ J G. Multiobjective synthesis of heat exchanger networks minimizing the total annual cost and the environmental impact[J]. Applied Thermal Engineering,2011,31(6):1099-1113. [14] KLEMEŠ J J,KRAVANJA Z. Forty years of heat integration:pinch analysis and mathematical programming[J]. Current Opinion in Chemical Engineering,2013,2(4):461-474. [15] 温录亮. 多目标最优化方法与应用[D]. 广州:暨南大学,2009. [16] JIN Z L,CHEN X T,WANG Y Q,et al. Heat exchanger network synthesis based on environmental impact minimization[J]. Clean Technologies and Environmental Policy,2014,16(1):183-187. [17] KIRLIK G,SAYIN S. A new algorithm for generating all nondominated solutions of multiobjective discrete optimization problems[J]. European Journal of Operational Research,2014,232(3):479-488. [18] VASKAN P,GUILLÉN-GOSÁLBEZ G,JIMÉNEZ L. Multi- objective design of heat-exchanger networks considering several life cycle impacts using a rigorous MILP-based dimensionality reduction technique[J]. Applied Energy,2012,98:149-161. [19] MIETTINEN K,MÄKELÄ M M. Interactive multiobjective optimization system WWW-NIMBUS on the internet[J]. Computers & Operations Research,2000,27(7):709-723. [20] LAUKKANEN T,TVEIT T M,OJALEHTO V,et al. An interactive multi-objective approach to heat exchanger network synthesis[J]. Computers & Chemical Engineering,2010,34(6):943-952. [21] LAUKKANEN T,TVEIT T M,OJALEHTO V,et al. Bilevel heat exchanger network synthesis with an interactive multi-objective optimization method[J]. Applied Thermal Engineering,2012,48:301-316. [22] DEB K,PRATAP A,AGARWAL S,et al. A fast and elitist multi-objective genetic algorithm:NSGA-Ⅱ[J]. IEEE Transactions on Evolutionary Computation,2002,6(2):182-197. [23] METAXIOTIS K,LIAGKOURAS K. Multiobjective evolutionary algorithms for portfolio management:A comprehensive literature review[J]. Expert Systems with Applications,2012,39(14):11685-11698. [24] 公茂果,焦李成,杨咚咚,等. 进化多目标优化算法研究[J]. 软件学报,2009,20(2):271-289. [25] AGARWAL A,GUPTA S K. Multiobjective optimal design of heat exchanger networks using new adaptations of the elitist. nondominated sorting genetic algorithm,NSGA-Ⅱ[J]. Industrial & Engineering Chemistry Research,2008,47(10):3489-3501. [26] 任建强. 管壳式换热器及换热器网络的多目标优化设计[D]. 济南:山东大学,2011. [27] 林露. 基于非支配排序遗传算法的换热网络多目标优化[D]. 杭州:浙江工业大学,2013. [28] SRINIVASAN S,RAMAKRISHNAN S. Evolutionary multi objective optimization for rule mining:a review[J]. Artificial Intelligence Review,2011,36(3):205-248. [29] 高媛. 非支配排序遗传算法 (NSGA) 的研究与应用[D]. 杭州:浙江大学,2006. [30] VON LÜCKEN C,BARÁN B,BRIZUELA C. A survey on multi-objective evolutionary algorithms for many-objective problems[J]. Computational Optimization and Applications,2014,58(3):707-756. [31] 师瑞峰. 多目标进化算法研究及其在生产排序中的应用[D]. 北京:北京航空航天大学,2006. [32] 马小姝,李宇龙,严浪. 传统多目标优化方法和多目标遗传算法的比较综述[J]. 电气传动自动化,2010,32(3):48-50. |